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Erschienen in: Journal of Medical Systems 1/2019

01.01.2019 | Image & Signal Processing

Hybrid Filtering Approach for Retrieval of MRI Image

verfasst von: K. Murugan, V. P. Arunachalam, S. Karthik

Erschienen in: Journal of Medical Systems | Ausgabe 1/2019

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Abstract

The quality of Magnetic Resonance Images(MRI) are degraded by the various types of noises. In this paper, a Hybrid Multi-resolution filter for denoising the MRI images degraded by the Salt and Pepper noise is proposed and the wavelet transform is used to improve the resolution of the denoised image.. The Hybrid filter consist of three value weighted filter and similarity based filter. In three value weighted filter, a variable local window is applied to find the noisy pixels. By using the noise free pixels in that window, the noisy pixels are reconstructed using three value method. In similarity based filter, a variable local window is applied to reconstruct the noisy pixels. In that window, based on the similarity between the noisy pixel sequence and noise free pixels sequence are used to reconstruct the noisy pixel. At last wavelet transform is used to increase the resolution of the reconstructed image. The experimental results shows that the proposed filter denoises the image and improves the resolution when compared to the existing methods and produces the efficiency of about 98%.
Literatur
1.
Zurück zum Zitat Gonzalez, R. C., and Woods, R. E., Digital image processing. Englewood Cliffs, NJ: Prentice-Hall, 2002. Gonzalez, R. C., and Woods, R. E., Digital image processing. Englewood Cliffs, NJ: Prentice-Hall, 2002.
2.
Zurück zum Zitat Brownrigg, R. K., The weighted median filter. Commun. ACM 27(8):807–818, 1984.CrossRef Brownrigg, R. K., The weighted median filter. Commun. ACM 27(8):807–818, 1984.CrossRef
3.
Zurück zum Zitat Chen, T., and Wu, H. R., Space variant median filters for the restoration of impulse noise corrupted images. IEEE Trans. Circ. Syst. II: Anal. Digit. Signal Process. 48(8):784–789, 2001.CrossRef Chen, T., and Wu, H. R., Space variant median filters for the restoration of impulse noise corrupted images. IEEE Trans. Circ. Syst. II: Anal. Digit. Signal Process. 48(8):784–789, 2001.CrossRef
4.
Zurück zum Zitat Kos, J., and Lee, Y. H., Center weighted median filters and their applications to image enhancement. IEEE Trans. Circ. Syst. 38(9):984–993, 1991.CrossRef Kos, J., and Lee, Y. H., Center weighted median filters and their applications to image enhancement. IEEE Trans. Circ. Syst. 38(9):984–993, 1991.CrossRef
5.
Zurück zum Zitat Cheng, C.-C.; Cheng, F.-C.; Lin, P.-H., and Huang, S.-C., A block-based switch median filter for removing high density salt-and-pepper noises. 2014 IEEE Int. Conf. Consum. Electron. Taiwan, 2014. Cheng, C.-C.; Cheng, F.-C.; Lin, P.-H., and Huang, S.-C., A block-based switch median filter for removing high density salt-and-pepper noises. 2014 IEEE Int. Conf. Consum. Electron. Taiwan, 2014.
6.
Zurück zum Zitat Sulaiman, S. N., Che Ishak, S. M., Isa, I. S., and Hamzah, N., De-noising of noisy MRI brain image using the switching-based clustering algorithm. 2014 IEEE Int. Conf. Contrl. Syst. Comput. Eng. (ICCSCE 2014), 2014. Sulaiman, S. N., Che Ishak, S. M., Isa, I. S., and Hamzah, N., De-noising of noisy MRI brain image using the switching-based clustering algorithm. 2014 IEEE Int. Conf. Contrl. Syst. Comput. Eng. (ICCSCE 2014), 2014.
7.
Zurück zum Zitat Yuan, S. Q., and Tan, Y. H., Impulse noise removal by a global–local noise detector and adaptive median filter. Sign. Process. 86(8):2123–2128, 2006.CrossRef Yuan, S. Q., and Tan, Y. H., Impulse noise removal by a global–local noise detector and adaptive median filter. Sign. Process. 86(8):2123–2128, 2006.CrossRef
8.
Zurück zum Zitat Veerakumar, T., Esakkirajan, S., and Vennila, I., Salt and pepper noise removal in video using adaptive decision based median filter. 2011 Int. Conf. Multimed. Sign. Process. Commun. Technol., 2011. Veerakumar, T., Esakkirajan, S., and Vennila, I., Salt and pepper noise removal in video using adaptive decision based median filter. 2011 Int. Conf. Multimed. Sign. Process. Commun. Technol., 2011.
9.
Zurück zum Zitat Jiang, D.-S., Li, X.-B., Wang, Z.-L., and Liu, C., An efficient edge-preserving approach based on adaptive fuzzy switching median filter. 2011 Int. Conf. Qual. Reliab. Risk Mainten. Saf. Eng., 2011. Jiang, D.-S., Li, X.-B., Wang, Z.-L., and Liu, C., An efficient edge-preserving approach based on adaptive fuzzy switching median filter. 2011 Int. Conf. Qual. Reliab. Risk Mainten. Saf. Eng., 2011.
10.
Zurück zum Zitat Srinivasan, K. S., and Ebenezer, D., A new fast and efficient decision-based algorithm for removal of high-density impulse noises. IEEE Sign. Process. Lett. 14(3):189–192, 2007.CrossRef Srinivasan, K. S., and Ebenezer, D., A new fast and efficient decision-based algorithm for removal of high-density impulse noises. IEEE Sign. Process. Lett. 14(3):189–192, 2007.CrossRef
11.
Zurück zum Zitat Daiyan, G. M., and Mottalib, M. A. Removal of high density salt & pepper noise through a modified decision based median filter. 2012 Int. Conf. Inform. Electron. Vision (ICIEV), 2012. Daiyan, G. M., and Mottalib, M. A. Removal of high density salt & pepper noise through a modified decision based median filter. 2012 Int. Conf. Inform. Electron. Vision (ICIEV), 2012.
12.
Zurück zum Zitat Wang, S. S., and Wu, C. H., A new impulse detection and filtering method for removal of wide range impulse noises. Pattern Recogn. 42(9):2194–2202, 2009.CrossRef Wang, S. S., and Wu, C. H., A new impulse detection and filtering method for removal of wide range impulse noises. Pattern Recogn. 42(9):2194–2202, 2009.CrossRef
13.
Zurück zum Zitat Jayasree, M., and Narayanan, N. K., An efficient mixed noise removal technique from gray scale images using noisy pixel modification technique. 2015 Int. Conf. Commun. Signal Process. (ICCSP), 2015. Jayasree, M., and Narayanan, N. K., An efficient mixed noise removal technique from gray scale images using noisy pixel modification technique. 2015 Int. Conf. Commun. Signal Process. (ICCSP), 2015.
14.
Zurück zum Zitat Yu, G., Qi, L., Sun, Y., and Zhou, Y., Impulse noise removal by a non- monotone adaptive gradient method. Sign. Process. 90(10):2891–2897, 2010.CrossRef Yu, G., Qi, L., Sun, Y., and Zhou, Y., Impulse noise removal by a non- monotone adaptive gradient method. Sign. Process. 90(10):2891–2897, 2010.CrossRef
15.
Zurück zum Zitat Zhang, X. M., and Xiong, Y. L., Impulse noise removal using directional weighted noise detector and adaptive weighted mean filter. IEEE Sign. Process. Lett. 16(4):295–298, 2009.CrossRef Zhang, X. M., and Xiong, Y. L., Impulse noise removal using directional weighted noise detector and adaptive weighted mean filter. IEEE Sign. Process. Lett. 16(4):295–298, 2009.CrossRef
16.
Zurück zum Zitat Buades, A., Coll, B., and Morel, J. M., A review of image denoising algorithms, with a new one. Multiscale Model. Simul. 4(2):490–530, 2005.CrossRef Buades, A., Coll, B., and Morel, J. M., A review of image denoising algorithms, with a new one. Multiscale Model. Simul. 4(2):490–530, 2005.CrossRef
17.
Zurück zum Zitat Zhang, X., and Zhan, Y., Decision based non local mens filter for removing impulse noise from digital images. Sign. Process. 2(93):517–524, 2013.CrossRef Zhang, X., and Zhan, Y., Decision based non local mens filter for removing impulse noise from digital images. Sign. Process. 2(93):517–524, 2013.CrossRef
18.
Zurück zum Zitat Zhang, P., and Li, F., A new adaptive weighted mean filter for removing salt and pepper noise. IEEE Sign. Process. Lett. 21(10):1280–1283, 2014.CrossRef Zhang, P., and Li, F., A new adaptive weighted mean filter for removing salt and pepper noise. IEEE Sign. Process. Lett. 21(10):1280–1283, 2014.CrossRef
19.
Zurück zum Zitat Ching T. L., and Yuechen, Y., Removal of salt and pepper noise in corrupted image using three values weighted approach with variable window size. Pattern Recogn. Lett., 2016. https://doi.org/10.1016/j.patrec.2016.06.026, Removal of salt-and-pepper noise in corrupted image using three-values-weighted approach with variable-size window, 80, 188, 199. Ching T. L., and Yuechen, Y., Removal of salt and pepper noise in corrupted image using three values weighted approach with variable window size. Pattern Recogn. Lett., 2016. https://​doi.​org/​10.​1016/​j.​patrec.​2016.​06.​026, Removal of salt-and-pepper noise in corrupted image using three-values-weighted approach with variable-size window, 80, 188, 199.
20.
Zurück zum Zitat Panetta, K., Squence to Sequnce similarity based filter for image denoising. IEEE Sens. J. 16(11), 2016. Panetta, K., Squence to Sequnce similarity based filter for image denoising. IEEE Sens. J. 16(11), 2016.
Metadaten
Titel
Hybrid Filtering Approach for Retrieval of MRI Image
verfasst von
K. Murugan
V. P. Arunachalam
S. Karthik
Publikationsdatum
01.01.2019
Verlag
Springer US
Erschienen in
Journal of Medical Systems / Ausgabe 1/2019
Print ISSN: 0148-5598
Elektronische ISSN: 1573-689X
DOI
https://doi.org/10.1007/s10916-018-1124-1

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